Abstract:
A golf club measuring system is designed to dynamically measure physical values of a golf club shaft during its swinging motion. A sensor wiring substrate includes a flexible board (e.g. polyethylene terephthalate material), a connector, a plurality of couplers, and a plurality of wires. A plurality of sensors is connected to the sensor wiring substrate via a plurality of couplers. The sensor wiring substrate is helically wound about the golf club shaft such that the flexible board is slightly warped and closely attached to the curved surface of a golf club shaft, thus reducing air resistance occurring on the golf club shaft being swung. An external device (e.g. a strain measuring device) is connected to the connector of the sensor wiring substrate so as to receive signals representing physical values (e.g. strain values), occurring on the golf club shaft being swung, from a plurality of sensors.
Abstract:
An earphone microphone is constituted of a main unit and an insert portion which are united in an L-shape. Two receivers are attached to the external surface of the main unit and exposed externally of a user's ear, while one receiver is attached to a distal end of the insert portion that is inserted into a user's external auditory canal and disposed opposite to a user's eardrum. A signal processor produces a difference signal between the output signals of two receivers exposed externally of the user's ear. The difference signal is subjected to high-pass filtering and subsequently added to the output signal of the receiver disposed inside the user's external auditory canal, thus producing a sound signal representing a user's sound. The sound signal includes a sufficient number of frequency components (e.g. frequency components higher than 3 kHz) prerequisite for discriminating the user's sound.
Abstract:
An earphone microphone is constituted of a main unit and an insert portion which are united in an L-shape. Two receivers are attached to the external surface of the main unit and exposed externally of a user's ear, whilst one receiver is attached to a distal end of the insert portion that is inserted into a user's external auditory canal and disposed opposite to a user's eardrum. A signal processor produces a difference signal between the output signals of two receivers exposed externally of the user's ear. The difference signal is subjected to high-pass filtering and subsequently added to the output signal of the receiver disposed inside the user's external auditory canal, thus producing a sound signal representing a user's sound. The sound signal includes a sufficient number of frequency components (e.g. frequency components higher than 3 kHz) prerequisite for discriminating the user's sound.
Abstract:
On a casing of an electronic keyboard instrument, there are provided front speakers, rear speakers and upper speakers as non-front speakers, a woofer speaker, and a vibrator. Tone generator section generates tone signals of tone colors corresponding to tones of various musical instruments. Assignment section adjusts, on a tone-color-by-tone-color basis, tone volume allocations, of the generated tone signals, to the speakers and vibrator. Further, the thus-adjusted tone signals are mixed for each of speaker reproduction systems and vibrator drive system, and then the resultant mixed tone signals of the speaker reproduction systems and vibrator drive system are supplied to corresponding ones of the speakers and vibrator.